Department of Paleobiology, MRC-121, National Museum of Natural History, PO Box 37012, Washington, DC 20013-7012, USA
Santa Fe Institute, 1399 Hyde Park Road, Santa Fe, NM 87501, USA.
Development. 2020 Feb 20;147(4):dev182899. doi: 10.1242/dev.182899.
The origins and the early evolution of multicellular animals required the exploitation of holozoan genomic regulatory elements and the acquisition of new regulatory tools. Comparative studies of metazoans and their relatives now allow reconstruction of the evolution of the metazoan regulatory genome, but the deep conservation of many genes has led to varied hypotheses about the morphology of early animals and the extent of developmental co-option. In this Review, I assess the emerging view that the early diversification of animals involved small organisms with diverse cell types, but largely lacking complex developmental patterning, which evolved independently in different bilaterian clades during the Cambrian Explosion.
多细胞动物的起源和早期进化需要利用真后生动物基因组调控元件,并获得新的调控工具。后生动物与其亲缘动物的比较研究现在可以重建后生动物调控基因组的进化,但许多基因的深度保守性导致了关于早期动物形态和发育共适应程度的各种假说。在这篇综述中,我评估了一个新兴的观点,即动物的早期多样化涉及具有不同细胞类型的小生物体,但在很大程度上缺乏复杂的发育模式,这些模式在寒武纪大爆发期间在不同的两侧对称动物类群中独立进化。